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Measuring magnetic devices at millikelvin temperatures

Dr Alexy Karenowska

Long Term Visitor

Sub department

  • Condensed Matter Physics

Research groups

  • Quantum magnonics
Alexy.Karenowska@physics.ox.ac.uk
Telephone: 01865 (2)72364
Clarendon Laboratory, room 173,030,120,107
  • About
  • Publications

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from diamonds to rust

Employing magnonic crystals to dictate the characteristics of auto-oscillatory spin-wave systems

Journal of Physics: Conference Series 303:1 (2011)

Authors:

AD Karenowska, AV Chumak, AA Serga, JF Gregg, B Hillebrands

Abstract:

Spin-wave active rings - positive-feedback systems incorporating spin-wave waveguides - provide important insight into fundamental magnetics, enable experimental investigations into nonlinear wave phenomena, and potentially find application in microwave electronics. Such rings break into spontaneous, monomode oscillation at a certain threshold value of feedback gain. In general, the wavenumber of this initially excited, threshold mode is impossible to predict precisely. Here we discuss how, by exploiting resonant spin-wave reflections from a magnonic crystal, an active ring system having a threshold mode with a well-defined and precisely predictable wavenumber may be realized. Our work suggests that study and development of active ring systems incorporating magnonic crystals may deliver useful insight into spin-wave transmission in structured magnetic films as well as devices with technological applicability.
More details from the publisher
Details from ORA

Spin information transfer and transport in hybrid spinmechatronic structures

Journal of Physics: Conference Series 303:1 (2011)

Authors:

AD Karenowska, JF Gregg, AV Chumak, AA Serga, B Hillebrands

Abstract:

Spin waves have long been recognized as potential signal carriers in spintronic devices. However, practical development of spin wave based information platforms is its infancy. To date, work in this area has focused on one-dimensional topologies based on purely magnetic thin-film transmission systems, typically exploiting interference phenomena to perform logical operations. In this paper, we describe an alternative approach in which spinmechatronic structures combining spin-wave transmission systems with magnetically loaded micro- and nano-mechanical elements provide spin-information processing functionality.
More details from the publisher
Details from ORA

Employing magnonic crystals to dictate the characteristics of auto-oscillatory spin-wave system

JOINT EUROPEAN MAGNETIC SYMPOSIA (JEMS) 303 (2011) ARTN 012007

Authors:

AD Karenowska, AV Chumak, AA Serga, JF Gregg, B Hillebrands
More details from the publisher

Spin information transfer and transport in hybrid spinmechatronic structures

JOINT EUROPEAN MAGNETIC SYMPOSIA (JEMS) 303 (2011) ARTN 012018

Authors:

AD Karenowska, JF Gregg, AV Chumak, AA Serga, B Hillebrands
More details from the publisher

Temporal evolution of inverse spin Hall effect voltage in a magnetic insulator-nonmagnetic metal structure

Applied Physics Letters 99 (2011) 182512

Authors:

A Karenowska, MB Jungfleisch, AV Chumak, VI Vasyuchka, AA Serga, B Obry, H Schultheiss, PA Beck, E Saitoh, B Hillebrands
More details from the publisher

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